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首页> 外文期刊>Nematology >Fertiliser use efficiency of soybean cultivars infected with Meloidogyne incognita and Pratylenchus penetrans.
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Fertiliser use efficiency of soybean cultivars infected with Meloidogyne incognita and Pratylenchus penetrans.

机译:感染了南方根结线虫和Pratylenchus penetrans的大豆品种的肥料利用效率。

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The most appropriate use of fertilisers to offset damage caused by nematode infestations can benefit greatly from determining fertiliser use efficiency (FUE). FUE is defined as increase in host productivity and/or decrease in nematode population density in response to a given fertiliser treatment. This study describes new and integrated approaches to identify FUE in nematode-infected plants. In two consecutive experiments, Heterodera glycines-resistant 'Bryan', susceptible-tolerant 'G88-20092', and susceptible-intolerant 'Tracy M' soybean cultivars were inoculated with 0 or 15 000 eggs of Meloidogyne incognita or mixed stages of Pratylenchus penetrans per 800 cm3 of sandy loam soil and maintained under glasshouse conditions (28+or-2 degrees C) for 25 and 26 days. Plants received 83+or-21 and 89+or-19 ml either full-strength Hoagland solution (HS), HS without N (HS-N), or tap water daily in Experiments 1 and 2, respectively. Photosynthesis and nematode population dynamics were chosen to test FUE because the relationship between these two parameters, for the most part, determines the outcome of crop yield in the presence of nematodes. Although the FUE varied by fertiliser source, cultivar and nematode, the data were conclusive in identifying the interactions. FUE was high for photosynthesis in all three cultivars, and more so in HS than in HS-N. FUE was high for suppressing population densities of both nematodes and increasing photosynthesis in cv. Tracy M and for M. incognita in cv. G88-20092. Fertiliser application against P. penetrans in cv. Bryan was unproductive because nematode population density increased. FUE for P. penetrans in cv. G88-20092 and for M. incognita in cv. Bryan was less conclusive because there was some increase in nematode population density. Overall, these new approaches to identifying FUE for host productivity in the presence of nematodes provide quantitative data that should be of great interest to plant breeders, soil scientists, agronomists and plant protection specialists..
机译:确定肥料使用效率(FUE)可以极大地受益于肥料的最适当使用,以抵消由线虫侵染引起的损害。 FUE定义为响应给定肥料处理,宿主生产力提高和/或线虫种群密度降低。这项研究描述了在线虫感染的植物中鉴定FUE的新的综合方法。在两个连续的实验中,分别向0或15,000个隐孢子虫或混合的拟南芥(Partylenchus penetrans)阶段接种了抗杂种优势的甘氨酸'Bryan',易感的'G88-20092'和易感的'Tracy M'大豆品种。 800立方厘米的砂壤土,并在温室条件下(28+或-2摄氏度)保持25和26天。在实验1和实验2中,植物分别每天分别接受83 + or-21和89 + or-19 ml的全强度Hoagland溶液(HS),不含N的HS(HS-N)或自来水。选择光合作用和线虫种群动态来测试FUE,因为这两个参数之间的关系在很大程度上决定了存在线虫时农作物的产量。尽管FUE因肥料来源,品种和线虫而异,但数据在确定相互作用方面具有决定性作用。在所有三个品种中,FUE的光合作用都很高,在HS中比在HS-N中更高。 FUE对抑制两个线虫的种群密度和增加光合作用中的光合作用具有很高的作用。 Tracy M和简历中的M. incognita。 G88-20092。在简历中对P. penetrans的肥料施用。布莱恩(Bryan)没有生产能力,因为线虫的种群密度增加了。简历中P.penetrans的FUE。 G88-20092和c。 Bryan的结论性较差,因为线虫种群密度有所增加。总体而言,这些在线虫存在下鉴定宿主生产力的FUE的新方法提供了定量数据,植物育种人员,土壤科学家,农艺师和植物保护专家应对此感兴趣。

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